A number of tools have been developed to detect topological phase transitions in strongly correlated quantum systems. They apply under different conditions, but do not cover the full range of many-body models. It is hence desirable to further expand the toolbox. Here, we propose to use quasiparticle properties to detect quantum phase transitions. The approach is independent from the choice of boundary conditions, and it does not assume a particular lattice structure. The probe is hence suitable for, e.g., fractals and quasicrystals. The method requires that one can reliably create quasiparticles in the considered systems. In the simplest cases, this can be done by a pinning potential, while it is less straightforward in more complicated sys...
Understanding the physical significance and probing the global invariants characterizing quantum top...
We study a statistical mechanics model of two species of bosons with mutual statistics θ=2π/n in (2+...
A peculiar feature of the majority of three-dimensional topological insulator surface states studied...
Topologically ordered phases flamboyance a cornucopia of intriguing phenomena that cannot be perceiv...
We investigate transitions between topologically ordered phases in two spatial dimensions induced by...
We study quantum phase transitions and the critical behavior of topologically-ordered phases by cons...
Quantum gates for the manipulation of topological qubits rely on interactions between non-Abelian an...
The discovery of topological phases of quantum matter has brought about a new paradigm in the unders...
We develop a method to characterize topological phase transitions for strongly correlated Hamiltonia...
The research described in this thesis focuses on topological phases in condensed matter systems. It ...
pre-printWe demonstrate how the generalized Pauli exclusion principle emerges for quasiparticle exci...
Understanding the physical significance and probing the global invariants characterizing quantum top...
Topological ordered phases are related to changes in the properties of their quasiparticle excitatio...
Strong quantum correlations between many particles in low dimensions lead to emergence of interestin...
The concrete realization of topological quantum computing using low-dimensional quasiparticles, know...
Understanding the physical significance and probing the global invariants characterizing quantum top...
We study a statistical mechanics model of two species of bosons with mutual statistics θ=2π/n in (2+...
A peculiar feature of the majority of three-dimensional topological insulator surface states studied...
Topologically ordered phases flamboyance a cornucopia of intriguing phenomena that cannot be perceiv...
We investigate transitions between topologically ordered phases in two spatial dimensions induced by...
We study quantum phase transitions and the critical behavior of topologically-ordered phases by cons...
Quantum gates for the manipulation of topological qubits rely on interactions between non-Abelian an...
The discovery of topological phases of quantum matter has brought about a new paradigm in the unders...
We develop a method to characterize topological phase transitions for strongly correlated Hamiltonia...
The research described in this thesis focuses on topological phases in condensed matter systems. It ...
pre-printWe demonstrate how the generalized Pauli exclusion principle emerges for quasiparticle exci...
Understanding the physical significance and probing the global invariants characterizing quantum top...
Topological ordered phases are related to changes in the properties of their quasiparticle excitatio...
Strong quantum correlations between many particles in low dimensions lead to emergence of interestin...
The concrete realization of topological quantum computing using low-dimensional quasiparticles, know...
Understanding the physical significance and probing the global invariants characterizing quantum top...
We study a statistical mechanics model of two species of bosons with mutual statistics θ=2π/n in (2+...
A peculiar feature of the majority of three-dimensional topological insulator surface states studied...